Quantum fisher information in noninertial frames
arXiv:1401.0596 · doi:10.1103/PhysRevA.89.042336
Abstract
We investigate the performance of quantum fisher information under the Unruh-Hawking effect, where one of the observers (eg, Rob) is uniformly accelerated with respect to other partners. In the context of relativistic quantum information theory, we demonstrate that quantum fisher information, as an important measure of the information content of quantum states, has a rich and subtle physical structure comparing with entanglement or Bell nonlocality. In this work, we mainly focus on the parameterized (and arbitrary) pure two-qubit states, where the weight parameter and phase parameter are naturally introduced. Intriguingly, we prove that keeps unchanged for both scalar and Dirac fields. Meanwhile, we observe that decreases with the increase of acceleration but remains finite in the limit of infinite acceleration. More importantly, our results show that the symmetry of (with respect to ) has been broken by the influence of Unruh effect for both cases.
7 pages, 3 figures. Comments are welcome!
References in corpus (12)
- The Unruh effect and its applications
- Entanglement of Dirac fields in non-inertial frames
- Fisher information under decoherence in Bloch representation
- Optimal quantum estimation of the Unruh-Hawking effect
- Hawking radiation, Entanglement and Teleportation in background of an asymptotically flat static black hole
- Degradation of non-maximal entanglement of scalar and Dirac fields in non-inertial frames
- Uncertainty Principle and Quantum Fisher Information - II
- Entanglement and discord: accelerated observations of local and global modes
- Private information via the Unruh effect
- Vanishing Geometric Discord in Non-Inertial Frames
- Hierarchy of measurement-induced Fisher information for composite states
- Fundamental limitations to information transfer in accelerated frames
Cited by in corpus (39)
- Tetrapartite entanglement measures of W-Class in noninertial frames
- Quantum metrology with unitary parametrization processes
- Quantum multiparameter metrology with generalized entangled coherent state
- Quantum discord and measurement-induced disturbance in the background of dilaton black holes
- Quantum Fisher information and symmetric logarithmic derivative via anti-commutators
- Quantum metrology and estimation of Unruh effect
- Multiple phase estimation for arbitrary pure states under white noise
- Maximal quantum Fisher information for general su(2) parametrization processes
- Parameter estimation for an expanding universe
- Protecting quantum Fisher information in correlated quantum channels
- Gravity in the Quantum Lab
- Does relativistic motion always degrade quantum Fisher information?
- How the relativistic motion affects Einstein-Podolsky-Rosen steering
- Entanglement Enhanced Thermometry in the Detection of the Unruh Effect
- Estimation of teleported and gained parameters in a non-inertial frame
- Estimation of pulsed driven qubit parameters via quantum Fisher information
- Retrieving the lost fermionic entanglement by partial measurement in noninertial frames
- Quantum estimation of acceleration and temperature in open quantum system
- Multiparameter estimation, lower bound on quantum Fisher information and non-Markovianity witnesses of noisy two-qubit systems
- Enhanced quantum teleportation in the background of Schwarzschild spacetime by weak measurements
- Quantum Fisher and Skew information for Unruh accelerated Dirac qubit
- Effects of partial measurements on quantum resources and quantum Fisher information of a teleported state in a relativistic scenario
- Quantum Parameter Estimation in the Unruh-DeWitt detector model
- Estimating the Unruh effect via entangled many-body probes
- Weak measurement effect on optimal estimation with lower and upper bound on relativistic metrology
- The precision of parameter estimation for dephasing model under squeezed reservoir
- Some measures for fermionic entanglement in the cosmological de Sitter spacetime
- Gravitational time dilation as a resource in quantum sensing
- QMetrology from QCosmology: Study with Entangled Two Qubit Open Quantum System in De Sitter Space
- Kinetic Spin Decoherence in a Gravitational Field
- An upper bound on the number of compatible parameters in simultaneous quantum estimation
- Optimal estimation of parameters for scalar fields in expanding universe exhibiting Lorentz invariance violation
- Effect of Wigner rotation on estimating unitary-shift parameter of relativistic spin-1/2 particle
- Phase-sensitive nonclassical properties in quantum metrology with a displaced squeezed vacuum state
- Estimation precision of parameter associated with Unruh-like effect
- The concealment of accelerated information is possible
- Parameter estimation in an anisotropic expanding spacetime
- Quantum Parameter Estimation for Detectors in Constantly Accelerated Motion
- Impact of the Unruh effect on the estimation precision of Gaussian channel parameters